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Prediction of ice-free conditions for a perennially ice-covered Antarctic lake. Journal of Geophysical Research: Earth Surface 124, (2019).
The physical limnology of a permanently ice-covered and chemically stratified Antarctic lake using high resolution spatial data from an autonomous underwater vehicle. Limnology and Oceanography 63, 1234 - 1252 (2018).
Photoadaptation to the polar night by phytoplankton in a permanently ice-covered Antarctic lake. Limnology and Oceanography 61, (2016).
Physiological characteristics of fungi associated with Antarctic environments. Land Resources and Environmental Sciences M.S., (2016).
Physiological Ecology of Microorganisms in Subglacial Lake Whillans. Frontiers in Microbiology 7, (2016).
The permanent ice cover of Lake Bonney, Antarctica: The influence of thickness and sediment distribution on photosynthetically available radiation and chlorophyll-a distribution in the underlying water column. Journal of Geophysical Research: Biogeosciences 119, 1879 - 1891 (2014).
Polar and alpine microbiology in a changing world. FEMS Microbiology Ecology 89, 209 - 210 (2014).
Perchlorate and chlorate biogeochemistry in ice-covered lakes of the McMurdo Dry Valleys, Antarctica. Geochimica et Cosmochimica Acta 98, 19 - 30 (2012).
Poisson Reconstruction of Extreme Submersed Environments: The ENDURANCE Exploration of an Under-Ice Antarctic Lake. Advances in Visual Computing. ISVC 2012. Lecture Notes in Computer Science. 7431, 394 - 403 (Springer Berlin Heidelberg, 2012).
Protist diversity in a permanently ice-covered Antarctic Lake during the polar night transition. The ISME Journal 5, 1559 - 1564 (2011).
Physiochemical properties influencing biomass abundance and primary production in Lake Hoare, Antarctica. Ecological Modelling (2010). doi:LTER
Plankton Dynamics in the McMurdo Dry Valley Lakes During the Transition to Polar Night - A Project Contributing to EBA. SCAR EBA (Evolution and Biodiversity in the Antarctic) Newsletter, October 2008 2, (2008).
Life in Ancient Ice ( ) 22-49 (Princeton University Press, 2005). at <http://www.montana.edu/lkbonney/DOCS/Publications/PriscuEtAl2005CyanobacteriaRefuge.pdf>
Perturbation of hydrochemical conditions in natural microcosms entombed within Antarctic ice. Ice and Climate News 6, 22-23 (2005).
Advances in Astrobiology and Biogeophysics 219-233 (Springer Verlag, 2005). doi:LTER
Long-Term Environmental Change in Arctic and Antarctic Lakes 475-507 (Kluwer Academic Publishers, 2004).
Long-term environmental change in Arctic and Antarctic lakes ( ) 475-507 (Kluwer Academic Publishers, 2004).
Phytoplankton phosphorus deficiency and alkaline phosphatase activity in the McMurdo Dry Valley lakes, Antarctica. Limnology and Oceanography 46, 1331-1346 (2001).
Physical controls on the Taylor Valley Ecosystem, Antarctica. BioScience 49, 961-972 (1999).
Perennial Antarctic Lake Ice: An Oasis for Life in a Polar Desert. Science 280, 2095-2098 (1998).
Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica 72, 281-295 (1998).
Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica 72, 269-280 (1998).
Photosynthetic characteristics of cyanobacteria in permanent ice covers on lakes in the McMurdo Dry Valleys, Antarctica. Antarctic Journal of the United States - 1996 Review Issue (NSF 98-28) 31, 216-218 (1998).
Physical Limnology of the McMurdo Dry Valleys Lakes, in Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica. Antarctic Research Series 72, 153-187 (1998).
Ecosystem Processes in a Polar Desert: The McMurdo Dry Valleys, Antarctica 72, 229-239 (1998).